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A study on compactness in metric spaces and topological spaces
A study on compactness in metric spaces and topological spaces

... Rabeya Akter, Nour Mohammed Chowdhury, Mohammad Safi Ullah. A Study on Compactness in Metric Spaces and Topological Spaces. Pure and Applied Mathematics Journal. Vol. 3, No. 5, 2014, pp. 105-112. doi: 10.11648/j.pamj.20140305.13 ...
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... are units) is both ancient and important: the prime numbers form the core of number theory, necessary for many of the most fundamental results of algebra and cryptography; and it was Euclid who proved their first basic property, their infinitude. But the question of any sort of pattern to these numb ...


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Free full version - topo.auburn.edu

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... theory which the second author collected during the past 15 years for his usage in his courses on this subject. There are some topics or treatments of such which may not be found or at least not easily found at other places. The reader will find a whole section on the basics of projective geometry s ...
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Brouwer fixed-point theorem



Brouwer's fixed-point theorem is a fixed-point theorem in topology, named after Luitzen Brouwer. It states that for any continuous function f mapping a compact convex set into itself there is a point x0 such that f(x0) = x0. The simplest forms of Brouwer's theorem are for continuous functions f from a closed interval I in the real numbers to itself or from a closed disk D to itself. A more general form than the latter is for continuous functions from a convex compact subset K of Euclidean space to itself.Among hundreds of fixed-point theorems, Brouwer's is particularly well known, due in part to its use across numerous fields of mathematics.In its original field, this result is one of the key theorems characterizing the topology of Euclidean spaces, along with the Jordan curve theorem, the hairy ball theorem and the Borsuk–Ulam theorem.This gives it a place among the fundamental theorems of topology. The theorem is also used for proving deep results about differential equations and is covered in most introductory courses on differential geometry.It appears in unlikely fields such as game theory. In economics, Brouwer's fixed-point theorem and its extension, the Kakutani fixed-point theorem, play a central role in the proof of existence of general equilibrium in market economies as developed in the 1950s by economics Nobel prize winners Kenneth Arrow and Gérard Debreu.The theorem was first studied in view of work on differential equations by the French mathematicians around Poincaré and Picard.Proving results such as the Poincaré–Bendixson theorem requires the use of topological methods.This work at the end of the 19th century opened into several successive versions of the theorem. The general case was first proved in 1910 by Jacques Hadamard and by Luitzen Egbertus Jan Brouwer.
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